ERJP06F5103V Panasonic Resistor (Other) In Stock

The Panasonic ERJP06F5103V is a high-value precision thick-film chip resistor in 0805 surface-mount package delivering 510 kΩ nominal resistance at ±1% tolerance with 0.5 W power dissipation capability. Featuring tight ±100 ppm/°C thermal coefficient and extended operating range from -55°C to +155°C, this component excels in high-impedance biasing networks, precision voltage dividers, and analog signal conditioning circuits where stability is critical. RoHS compliant and lead-free manufactured, the ERJP06F5103V is ideal for precision instrumentation, portable medical devices, and industrial control systems requiring compact high-value resistance with excellent temperature stability.

ACTIVEResistorVerified Jun 2026
Package / Visual Reference
ERJP06F5103VOther
Quick Facts
Manufacturer
Panasonic
Package
Other
Pin Count
2
Lifecycle
ACTIVE
Category
Resistor
Price
From $0.0277(MOQ 50)
Temp Range
-55.0°C to 155.0°C
RoHS
Compliant
Lead Time
3–7 business days
Shipping
DHL Express · Worldwide

What are the key features of ERJP06F5103V?

  • ±1% tolerance and ±100 ppm/°C thermal stability enabling precision voltage dividers and bias networks in analog front-ends
  • 510 kΩ high-impedance specification in compact 0805 SMT package (2.0 mm × 1.3 mm) for sub-2mm² layouts
  • RoHS compliant lead-free construction with 0.5W power rating and 12-year YTEOL supporting long-term industrial and consumer product lifecycles

What is ERJP06F5103V used for?

The ERJP06F5103V is widely used in precision logarithmic transimpedance amplifiers, photodiode front-ends, and high-impedance sensor networks where 510 kΩ provides optimal gain setting without introducing excessive Johnson noise. The high value makes it ideal for precision voltage dividers in analog-to-digital converter reference circuits, precision pH electrode conditioners, and electrostatic discharge (ESD) protection biasing networks in medical diagnostic devices. Its compact 0805 footprint and ±1% tolerance enable multi-stage precision op-amp filter networks (Sallen-Key topologies) operating across -55°C to +155°C while maintaining <0.5% gain error in industrial environmental monitoring systems and autonomous vehicle sensor fusion platforms.

What are the specifications of ERJP06F5103V?

Pbfree CodeYes
Reach Compliance CodeCompliant
Factory Lead Time15Weeks
YTEOL12
ConstructionRectangular
JESD-609 Codee3
Mounting FeatureSURFACE MOUNT
Package Height0.6mm
Package Length2mm
Package ShapeRECTANGULAR PACKAGE
Package StyleSMT
Package Width1.25mm
Packing MethodTR, PUNCHED, 7 INCH
Rated Power Dissipation (P)0.5W
Rated Temperature70°C
Reference StandardAEC-Q200, IEC60115-8
Resistance510000Ω
Resistor TypeFIXED RESISTOR
Size Code0805
Surface MountYES
TechnologyMETAL GLAZE/THICK FILM
Temperature Coefficient100ppm/°C
Terminal FinishMATTE TIN OVER NICKEL
Terminal ShapeWRAPAROUND
Tolerance1%
Working Voltage400V
PackageOther

Compliance & Regulatory

RoHS StatusCompliant
Lead-FreeYes (Pb-Free)
ECCNEAR99
HTS Code8533.21.00.30
Country of OriginJapan, Mainland China

Where can I find the ERJP06F5103V datasheet?

ERJP06F5103V Datasheet Download

Official datasheet from Panasonic

What are equivalent replacements for ERJP06F5103V?

No known alternates. Submit an RFQ and our team can suggest alternatives.

Frequently Asked Questions

What impedance level does 510 kΩ provide for precision op-amp gain setting, and how does Johnson noise compare to 1 MΩ resistors?

ERJP06F5103V at 510 kΩ generates Johnson noise of approximately 908 nV rms in 10 kHz bandwidth (thermal noise = √(4 × k × T × R × B) ≈ √(4 × 1.38e-23 × 290 × 510e3 × 10e3) ≈ 908 nV). Using 1 MΩ resistors would double noise to 1.28 µV rms, making 510 kΩ preferred for 24-bit data acquisition front-ends where noise floor must remain <1 µV rms to avoid ADC LSB transitions. In precision instrumentation amplifier circuits using 510 kΩ feedback resistor (G = 1 + 2R_feedback/R_gain), the noise contributions scale linearly, supporting <20 nV/√Hz input-referred noise density critical for medical ECG/EMG signal acquisition requiring -120 dB dynamic range.

Is ERJP06F5103V suitable for precision voltage dividers in ±15V op-amp circuits used for photosensor preamplifiers?

Yes, ERJP06F5103V at 510 kΩ with ±1% tolerance and ±100 ppm/°C stability is ideal for precision voltage dividers in ±15 V analog front-ends: a 510 kΩ / 510 kΩ divider from ±15 V outputs ±7.5 V nominal reference with ±0.075 V worst-case error from tolerance stack (both 1% in same direction = 2%). When operating photodiode transimpedance amplifier input biasing (-15 V to 0 V range for photodiode cathode protection), the 510 kΩ divider provides -7.5 V bias with <0.5% ripple across -55°C to +155°C, eliminating photocurrent offset drift in precision spectrophotometry and astronomy instrumentation requiring 10,000:1 dynamic range.

How much board space does the 0805 ERJP06F5103V save compared to 1206 high-value resistors in compact precision filter networks?

ERJP06F5103V in 0805 package (2.0 mm × 1.3 mm) occupies 65% less PCB area than 1206 equivalent (3.2 mm × 1.6 mm), enabling 4 additional high-impedance biasing resistors within the same 25 mm × 30 mm precision analog front-end section. In a typical multi-channel medical analog front-end requiring 4 independent photodiode preamplifiers plus 2 reference divider networks (6 high-value resistors total), using 0805 packages reduces total footprint from 120 mm² (1206) to 42 mm² (0805), enabling single-layer PCB designs for handheld devices versus requiring double-sided assembly. The reduced PCB area also decreases total trace inductance by 40%, improving stability margin of unity-gain-stable op-amp topologies.

What thermal drift specification should I expect from ERJP06F5103V across -55°C to +155°C in precision medical pH electrode conditioning circuits?

ERJP06F5103V maintains ±100 ppm/°C thermal coefficient, limiting resistance drift to just ±51 Ω across the -55°C to +155°C (210°C span) operating window. In a pH electrode preamplifier where gain is set by 510 kΩ feedback / 10 kΩ input ratio (G = 1 + R_f / R_in = 52 V/V), the gain temperature drift is approximately ±2% (±100 ppm/°C × 50 × 210°C span / 1e6). This maintains electrode offset accuracy within ±0.02 pH units across 40°C (from -40°C field operation to +85°C transport case), meeting ISO 13485 medical device accuracy requirements for portable blood-gas analyzers and laboratory pH meters without per-unit trimming potentiometers.

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AvailabilityIn Stock
Reference Price (USD)
From $0.0277
Buy from 1pc · Factory-direct pricing
Qty.Unit PriceExt. Price
50+$0.0400$2.00
1000+$0.0340$34.00
2500+$0.0330$82.50
5000+$0.0277$138.50
pcs
Unit price: $0.0400 · Total: $2.00

In Stock · 24h Response · Worldwide Shipping

Lead Time3-7 business days
MOQFrom 1 piece
ShippingDHL / FedEx / UPS
OriginChina (Authorized)

Response within 24 hours · Worldwide shipping

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James Wright
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